Department of Entomology, Nanjing Agricultural University, Nanjing, 210095, Jiangsu, China.
Department of Plant Protection, Guangxi University, Nanning, 530005, Guangxi, China.
Exp Appl Acarol. 2019 Dec;79(3-4):323-344. doi: 10.1007/s10493-019-00443-8. Epub 2019 Nov 30.
The Eriophyoidea, notable for specific morphological characters (four-legged mites) and gall-formation in host plants (gall mites), is one of the most species-rich superfamilies of Acari. Monophyly of the superfamily Eriophyoidea is accepted by all acarologists; however, monophyly of most genera has not been evaluated in a molecular phylogenetic network. Furthermore, most eriophyoid mites, especially species in the genus Diptilomiopus, are morphologically similar, challenging their identification. Here we test the phylogeny and cryptic diversity of Diptilomiopus species using fragments of two mitochondrial (COI and 12S) and two nuclear (18S and 28S) genes. Our results revealed the monophyly of Diptilomiopus. Sequence distance, barcode gap, and species delimitation analyses of the COI gene allowed us to resolve cryptic diversity of Diptilomiopus species. Additionally, we supposed that characteristics of genu fused with femur on both legs and seta ft' absent on leg II evolved only once within Diptilomiopus, which are potential morphological synapomorphies. In contrast, characteristics of both setae ft' and ft″ divided into a short branch and a long branch were supposed evolving multiple times independently. Our findings contribute to the understanding of phylogeny and morphological evolution of Diptilomiopus species and provide a DNA-based approach for species delimitation of Diptilomiopus mites.
叶螨总科,以其特有的形态特征(四足螨)和宿主植物的瘿形成(瘿螨)而闻名,是节肢动物中物种最丰富的超科之一。叶螨总科的单系性被所有螨类学家所接受;然而,大多数属的单系性尚未在分子系统发育网络中进行评估。此外,大多数叶螨,特别是 Diptilomiopus 属的物种,在形态上非常相似,这给它们的鉴定带来了挑战。在这里,我们使用两段线粒体(COI 和 12S)和两段核(18S 和 28S)基因片段来测试 Diptilomiopus 物种的系统发育和隐种多样性。我们的结果表明 Diptilomiopus 是单系的。COI 基因的序列距离、条码间隙和物种划分分析使我们能够解决 Diptilomiopus 物种的隐种多样性问题。此外,我们推测,两条腿上的股节与胫节融合以及腿 II 上的 ft'刚毛缺失的特征,在 Diptilomiopus 中只进化了一次,这是潜在的形态 synapomorphies。相比之下,ft'和 ft″刚毛都分为短支和长支的特征,被认为是独立多次进化的。我们的研究结果有助于了解 Diptilomiopus 物种的系统发育和形态进化,并为 Diptilomiopus 螨的物种划分提供了一种基于 DNA 的方法。